Radiation pattern reconfigurable antenna for LTE applications
This project proposes a radiation pattern reconfigurable antenna for LTE applications. Long Term Evolution (LTE) is an advanced system in the wireless telecommunication development. Compared to previous standards, LTE offers improved performance. The main advantage of this project is to steer the ra...
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2018
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my-utm-ep.785782018-08-29T07:33:46Z Radiation pattern reconfigurable antenna for LTE applications 2018-01 Kumar, Gorantla Dileep TK Electrical engineering. Electronics Nuclear engineering This project proposes a radiation pattern reconfigurable antenna for LTE applications. Long Term Evolution (LTE) is an advanced system in the wireless telecommunication development. Compared to previous standards, LTE offers improved performance. The main advantage of this project is to steer the radiation pattern to a particular direction. The radiation pattern steering is achieved by applying progressive phase shifting. The transmission line model is used to obtain design parameters of the antenna. By using the progressive phase shift concept, three different configurations of patch array antennas are designed at 2.6GHz operating frequency. The three different directions had been formed at -15°, 0°, 15°. FR4 substrate is used for designing the reconfigurable antenna with thickness of 1.6mm. Measured and simulated results are well matched, but with some minor deviations. The gain of the antenna is 4.4dB with broadside direction and the gain is 4.6dB when the beam steers to either ±15°. 2018-01 Thesis http://eprints.utm.my/id/eprint/78578/ http://eprints.utm.my/id/eprint/78578/1/GorantlaDileepKumarMFKE2018.pdf application/pdf en public http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:108367 masters Universiti Teknologi Malaysia, Faculty of Electrical Engineering Faculty of Electrical Engineering |
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Universiti Teknologi Malaysia |
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UTM Institutional Repository |
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English |
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TK Electrical engineering Electronics Nuclear engineering |
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TK Electrical engineering Electronics Nuclear engineering Kumar, Gorantla Dileep Radiation pattern reconfigurable antenna for LTE applications |
description |
This project proposes a radiation pattern reconfigurable antenna for LTE applications. Long Term Evolution (LTE) is an advanced system in the wireless telecommunication development. Compared to previous standards, LTE offers improved performance. The main advantage of this project is to steer the radiation pattern to a particular direction. The radiation pattern steering is achieved by applying progressive phase shifting. The transmission line model is used to obtain design parameters of the antenna. By using the progressive phase shift concept, three different configurations of patch array antennas are designed at 2.6GHz operating frequency. The three different directions had been formed at -15°, 0°, 15°. FR4 substrate is used for designing the reconfigurable antenna with thickness of 1.6mm. Measured and simulated results are well matched, but with some minor deviations. The gain of the antenna is 4.4dB with broadside direction and the gain is 4.6dB when the beam steers to either ±15°. |
format |
Thesis |
qualification_level |
Master's degree |
author |
Kumar, Gorantla Dileep |
author_facet |
Kumar, Gorantla Dileep |
author_sort |
Kumar, Gorantla Dileep |
title |
Radiation pattern reconfigurable antenna for LTE applications |
title_short |
Radiation pattern reconfigurable antenna for LTE applications |
title_full |
Radiation pattern reconfigurable antenna for LTE applications |
title_fullStr |
Radiation pattern reconfigurable antenna for LTE applications |
title_full_unstemmed |
Radiation pattern reconfigurable antenna for LTE applications |
title_sort |
radiation pattern reconfigurable antenna for lte applications |
granting_institution |
Universiti Teknologi Malaysia, Faculty of Electrical Engineering |
granting_department |
Faculty of Electrical Engineering |
publishDate |
2018 |
url |
http://eprints.utm.my/id/eprint/78578/1/GorantlaDileepKumarMFKE2018.pdf |
_version_ |
1747818019793403904 |